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A time series model for influent temperature estimation: Application to dynamic temperature modelling of an aerated lagoon

机译:进水温度估计的时间序列模型:在充气泻湖动态温度建模中的应用

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摘要

Thirty-nine linear regression and time series models were built and calibrated for influent temperature (T_i) estimation at the primary aerated facultative lagoon in a municipal wastewater treatment plant. The models were based on mean daily ambient air temperature (T_a) and/or daily rainfall (P), and-optionally-wastewater temperature autoregression. The best fits were achieved with some time series models involving T_a and P, and T_i autoregression. The best-fit model was able to estimate influent temperature with a root-mean-square-error of 0.5 ℃, and an R~2 of 0.925, for the calibration period of 10.5 months. In addition, a dynamic lagoon-temperature (T_w) model from the literature was modified in its terms of solar radiation and aeration latent heat, and applied to the primary lagoon. The model was fed with the estimated influent temperature, and five model parameters were identified by calibration against 10.5-month T_w data. Dynamic lagoon-temperature estimation results were comparable to or better than other results of long-term simulations found in the literature. Sensitivity analyses were run on both models. Further validation with independent sets of data is needed for verification of the predictive capability of the models.
机译:建立了39个线性回归和时间序列模型,并对其进行了校准,以估计市政污水处理厂主要充气兼性泻湖中的进水温度(T_i)。这些模型基于平均每日环境空气温度(T_a)和/或每日降雨量(P),以及可选的废水温度自回归。最佳拟合是通过一些涉及T_a和P以及T_i自回归的时间序列模型实现的。最佳拟合模型能够估计进水温度,均方根误差为0.5℃,R〜2为0.925,校准周期为10.5个月。另外,根据文献中的动态泻湖温度(T_w)模型对太阳辐射和曝气潜热进行了修改,并将其应用于主要泻湖。向模型输入估计的进水温度,并根据10.5个月的T_w数据进行校准,从而确定了五个模型参数。动态的泻湖温度估算结果与文献中的长期模拟的其他结果相当或更好。在两个模型上都进行了敏感性分析。需要使用独立的数据集进行进一步验证,以验证模型的预测能力。

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